TY - JOUR
T1 - Highly Regioselective and Efficient Biosynthesis of Polydatin by an Engineered UGTBL1- AtSuSy Cascade Reaction
AU - Chen, Tianyi
AU - Chen, Ziyi
AU - Wang, Nan
AU - Chu, Jianlin
AU - Fan, Bo
AU - Cheng, Cheng
AU - Qin, Song
AU - He, Bingfang
N1 - Publisher Copyright:
© 2021 American Chemical Society. All rights reserved.
PY - 2021/8/11
Y1 - 2021/8/11
N2 - Polydatin, resveratrol-3-O-β-glucoside, possesses various biological activities. However, the regioselective glucosylation of resveratrol by UDP-glycosyltransferases (UGTs) constitutes a persistent problem. In this study, semi-rational design and iterative combinatorial mutagenesis were carried out to screen the mutants of UGTBL1 and the high specificity with the glycosylation of the 3-OH group of resveratrol was explored. The triple mutant I62G/M112D/K143G exhibited near-perfect control of polydatin synthesis (regioselectivity ∼99%), and the ratio of polydatin to resveratrol-4′-O-β-glucoside was finally enhanced by 786-fold. Molecular docking revealed that the mutant could form three H-bonds between 3-, 5-, and 4′-OH groups of resveratrol and the residues around the active center, resulting in the oriented-binding of resveratrol. Furthermore, UGTBL1 mutant coupling sucrose synthase AtSuSy can synthesize polydatin at an unprecedented high titer of 10.33 g/L, together with efficient UDPG regeneration (RCmax = 54). This study provides an efficient approach for the regioselective biosynthesis of polydatin.
AB - Polydatin, resveratrol-3-O-β-glucoside, possesses various biological activities. However, the regioselective glucosylation of resveratrol by UDP-glycosyltransferases (UGTs) constitutes a persistent problem. In this study, semi-rational design and iterative combinatorial mutagenesis were carried out to screen the mutants of UGTBL1 and the high specificity with the glycosylation of the 3-OH group of resveratrol was explored. The triple mutant I62G/M112D/K143G exhibited near-perfect control of polydatin synthesis (regioselectivity ∼99%), and the ratio of polydatin to resveratrol-4′-O-β-glucoside was finally enhanced by 786-fold. Molecular docking revealed that the mutant could form three H-bonds between 3-, 5-, and 4′-OH groups of resveratrol and the residues around the active center, resulting in the oriented-binding of resveratrol. Furthermore, UGTBL1 mutant coupling sucrose synthase AtSuSy can synthesize polydatin at an unprecedented high titer of 10.33 g/L, together with efficient UDPG regeneration (RCmax = 54). This study provides an efficient approach for the regioselective biosynthesis of polydatin.
KW - UGT- AtSuSy cascade reaction
KW - glycosyltransferase
KW - polydatin
KW - regioselective synthesis
KW - semi-rational design
UR - http://www.scopus.com/inward/record.url?scp=85112675947&partnerID=8YFLogxK
U2 - 10.1021/acs.jafc.1c02518
DO - 10.1021/acs.jafc.1c02518
M3 - 文章
C2 - 34319737
AN - SCOPUS:85112675947
SN - 0021-8561
VL - 69
SP - 8695
EP - 8702
JO - Journal of Agricultural and Food Chemistry
JF - Journal of Agricultural and Food Chemistry
IS - 31
ER -